Hot water in the inner 100 AU of the Class 0 protostar NGC1333 IRAS2A
arXiv:1303.6177 · doi:10.1088/0004-637X/769/1/19
Abstract
Evaporation of water ice above 100 K in the inner few 100 AU of low-mass embedded protostars (the so-called hot core) should produce quiescent water vapor abundances of ~10^-4 relative to H2. Observational evidence so far points at abundances of only a few 10^-6. However, these values are based on spherical models, which are known from interferometric studies to be inaccurate on the relevant spatial scales. Are hot cores really that much drier than expected, or are the low abundances an artifact of the inaccurate physical models? We present deep velocity-resolved Herschel-HIFI spectra of the 3(12)-3(03) lines of H2-16O and H2-18O (1097 GHz, Eup/k = 249 K) in the low-mass Class 0 protostar NGC1333 IRAS2A. A spherical radiative transfer model with a power-law density profile is unable to reproduce both the HIFI data and existing interferometric data on the H2-18O 3(13)-2(20) line (203 GHz, Eup/k = 204 K). Instead, the HIFI spectra likely show optically thick emission from a hot core with a radius of about 100 AU. The mass of the hot core is estimated from the C18O J=9-8 and 10-9 lines. We derive a lower limit to the hot water abundance of 2x10^-5, consistent with the theoretical predictions of ~10^-4. The revised HDO/H2O abundance ratio is 1x10^-3, an order of magnitude lower than previously estimated.
Accepted by ApJ; 12 pages in emulateapj format; 7 figures
References in corpus (10)
- The chemical history of molecules in circumstellar disks. I. Ices
- Water emission in NGC1333-IRAS4: The physical structure of the envelope
- Warm water deuterium fractionation in IRAS 16293-2422 - The high-resolution ALMA and SMA view
- The abundance of H2O and HDO in Orion KL from Herschel/HIFI
- Herschel-HIFI observations of high-J CO lines in the NGC 1333 low-mass star-forming region
- The Abundance, Ortho/Para Ratio, and Deuteration of Water in the High-Mass Star Forming Region NGC 6334 I
- Constraining the Earliest Circumstellar Disks and their Envelopes
- Water destruction by X-rays in young stellar objects
- Characterizing the velocity field in hydrodynamical simulations of low-mass star formation using spectral line profiles
- Modeling water emission from low-mass protostellar envelopes
Cited by in corpus (27)
- Interstellar water chemistry: from laboratory to observations
- Astrochemistry During the Formation of Stars
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- Multilayer formation and evaporation of deuterated ices in prestellar and protostellar cores
- Chemo-dynamical deuterium fractionation in the early solar nebula: The origin of water on Earth and in asteroids and comets
- Volatile snowlines in embedded disks around low-mass protostars
- The deuterium fractionation of water on solar-system scales in deeply-embedded low-mass protostars
- HD depletion in starless cores
- OH mid-infrared emission as a diagnostic of HO UV photodissociation. I. Model and application to the HH 211 shock
- Origins Space Telescope Mission Concept Study Report
- Deuterated water in the solar-type protostars NGC 1333 IRAS 4A and IRAS 4B
- Constraining the physical structure of the inner few 100 AU scales of deeply embedded low-mass protostars
- Waterfalls around protostars: Infall motions towards Class 0/I envelopes as probed by water
- ALMA observations of water deuteration: A physical diagnostic of the formation of protostars
- Herschel spectroscopic observations of the compact obscured nucleus in Zw 049.057
- Chemical modeling of water deuteration in IRAS16293-2422
- X-ray induced chemistry of water and related molecules in low-mass protostellar envelopes
- Water in star-forming regions with Herschel (WISH) V. The physical conditions in low-mass protostellar outflows revealed by multi-transition water observations
- Missing water in Class I protostellar disks
- Importance of source structure on complex organics emission II. Can disks explain lack of methanol emission from some low-mass protostars?
- Chemistry in a forming protoplanetary disk: main accretion phase
- Evolution of the reservoirs of volatiles in the protosolar nebula
- Astro & cosmo-chemical consequences of accretion bursts I: the D/H ratio of water
- The Herschel-HIFI view of mid-IR quiet massive protostellar objects
- Exploring the Origins of Earth's Nitrogen: Astronomical Observations of Nitrogen-bearing Organics in Protostellar Environments
- Analysis of Low Excitation HDO Transitions Toward the High-Mass Star-forming Regions G34.26+0.15, W51e/e, and W49N
- Water emission tracing active star formation from the Milky Way to high- galaxies